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Scalable Functionalized Graphene Nano-platelets as Tunable Cathodes for High-performance Lithium Rechargeable Batteries

机译:可扩展的功能化石墨烯纳米血小板作为高性能锂可充电电池的可调阴极

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摘要

High-performance and cost-effective rechargeable batteries are key to the success of electric vehicles and large-scale energy storage systems. Extensive research has focused on the development of (i) new high-energy electrodes that can store more lithium or (ii) high-power nano-structured electrodes hybridized with carbonaceous materials. However, the current status of lithium batteries based on redox reactions of heavy transition metals still remains far below the demands required for the proposed applications. Herein, we present a novel approach using tunable functional groups on graphene nano-platelets as redox centers. The electrode can deliver high capacity of ~250 mAh g−1, power of ~20 kW kg−1 in an acceptable cathode voltage range, and provide excellent cyclability up to thousands of repeated charge/discharge cycles. The simple, mass-scalable synthetic route for the functionalized graphene nano-platelets proposed in this work suggests that the graphene cathode can be a promising new class of electrode.
机译:高性能且具有成本效益的可充电电池是电动汽车和大规模储能系统成功的关键。广泛的研究集中在(i)可以存储更多锂的新高能电极或(ii)与碳质材料混合的高功率纳米结构电极的开发上。然而,基于重过渡金属的氧化还原反应的锂电池的当前状态仍然远低于提出的应用所需的要求。在本文中,我们提出了一种使用石墨烯纳米片上的可调官能团作为氧化还原中心的新颖方法。在可接受的阴极电压范围内,该电极可提供约250 mAh g -1 的高容量,约20 kW kg -1 的功率,并提供高达数千倍的出色循环能力重复的充电/放电循环。这项工作中提出的功能化石墨烯纳米片的简单,可大规模缩放的合成路线表明,石墨烯阴极可以成为有前途的新型电极。

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